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Andres Amaya Garcia614d9c02017-10-24 21:27:43 +01001/*
Andres Amaya Garcia904e1ef2018-04-17 09:16:30 -05002 * Common and shared functions used by multiple modules in the Mbed TLS
3 * library.
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +01004 *
Andres Amaya Garcia757cd722018-03-08 21:25:25 +00005 * Copyright (C) 2018, Arm Limited, All Rights Reserved
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +01006 * SPDX-License-Identifier: Apache-2.0
7 *
8 * Licensed under the Apache License, Version 2.0 (the "License"); you may
9 * not use this file except in compliance with the License.
10 * You may obtain a copy of the License at
11 *
12 * http://www.apache.org/licenses/LICENSE-2.0
13 *
14 * Unless required by applicable law or agreed to in writing, software
15 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
16 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
17 * See the License for the specific language governing permissions and
18 * limitations under the License.
19 *
Andres Amaya Garcia757cd722018-03-08 21:25:25 +000020 * This file is part of Mbed TLS (https://tls.mbed.org)
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +010021 */
22
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +010023/*
Hanno Becker48a816f2018-09-05 15:22:22 +010024 * Ensure gmtime_r is available even with -std=c99; must be defined before
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +010025 * config.h, which pulls in glibc's features.h. Harmless on other platforms.
26 */
Andres Amaya Garcia94b540a2018-09-05 12:27:32 +010027#if !defined(_POSIX_C_SOURCE)
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +010028#define _POSIX_C_SOURCE 200112L
Andres Amaya Garcia94b540a2018-09-05 12:27:32 +010029#endif
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +010030
Andres Amaya Garciab1262a32017-10-25 09:51:14 +010031#if !defined(MBEDTLS_CONFIG_FILE)
32#include "mbedtls/config.h"
33#else
34#include MBEDTLS_CONFIG_FILE
35#endif
36
Andres Amaya Garcia1f6301b2018-04-17 09:51:09 -050037#include "mbedtls/platform_util.h"
Simon Butcherb4868032018-12-06 17:36:34 +000038#include "mbedtls/platform.h"
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +010039#include "mbedtls/threading.h"
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +010040
Piotr Nowicki5d5841f2020-06-05 16:33:24 +020041#if !defined(MBEDTLS_PLATFORM_C)
42#include <stdlib.h>
43#define mbedtls_calloc calloc
44#define mbedtls_free free
45#endif
46
Jarno Lamsae29e8a42019-10-03 11:06:35 +030047#if defined(MBEDTLS_ENTROPY_HARDWARE_ALT)
48#include "mbedtls/entropy_poll.h"
49#endif
50
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +010051#include <stddef.h>
Andres Amaya Garciaecd18912017-10-26 22:43:41 +010052#include <string.h>
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +010053
Arto Kinnunenac6d2262020-01-09 10:11:20 +020054/* Max number of loops for mbedtls_platform_random_delay */
Arto Kinnunenb1486512020-01-09 11:11:23 +020055#define MAX_RAND_DELAY 100
Arto Kinnunenac6d2262020-01-09 10:11:20 +020056
Andres Amaya Garcia904e1ef2018-04-17 09:16:30 -050057#if !defined(MBEDTLS_PLATFORM_ZEROIZE_ALT)
Andres Amaya Garciaecd18912017-10-26 22:43:41 +010058/*
59 * This implementation should never be optimized out by the compiler
60 *
Andres Amaya Garcia904e1ef2018-04-17 09:16:30 -050061 * This implementation for mbedtls_platform_zeroize() was inspired from Colin
62 * Percival's blog article at:
Andres Amaya Garcia1e8ea5f2018-03-08 20:46:39 +000063 *
64 * http://www.daemonology.net/blog/2014-09-04-how-to-zero-a-buffer.html
65 *
66 * It uses a volatile function pointer to the standard memset(). Because the
67 * pointer is volatile the compiler expects it to change at
68 * any time and will not optimize out the call that could potentially perform
69 * other operations on the input buffer instead of just setting it to 0.
70 * Nevertheless, as pointed out by davidtgoldblatt on Hacker News
71 * (refer to http://www.daemonology.net/blog/2014-09-05-erratum.html for
72 * details), optimizations of the following form are still possible:
Andres Amaya Garciaecd18912017-10-26 22:43:41 +010073 *
74 * if( memset_func != memset )
75 * memset_func( buf, 0, len );
76 *
Andres Amaya Garcia904e1ef2018-04-17 09:16:30 -050077 * Note that it is extremely difficult to guarantee that
78 * mbedtls_platform_zeroize() will not be optimized out by aggressive compilers
79 * in a portable way. For this reason, Mbed TLS also provides the configuration
80 * option MBEDTLS_PLATFORM_ZEROIZE_ALT, which allows users to configure
81 * mbedtls_platform_zeroize() to use a suitable implementation for their
82 * platform and needs.
Andres Amaya Garciaecd18912017-10-26 22:43:41 +010083 */
Manuel Pégourié-Gonnard14f33e72019-10-02 16:23:52 +020084void *mbedtls_platform_memset( void *, int, size_t );
85static void * (* const volatile memset_func)( void *, int, size_t ) = mbedtls_platform_memset;
Andres Amaya Garciaecd18912017-10-26 22:43:41 +010086
Andres Amaya Garcia904e1ef2018-04-17 09:16:30 -050087void mbedtls_platform_zeroize( void *buf, size_t len )
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +010088{
Vikas Katariya0c344992019-08-15 14:24:20 +010089 MBEDTLS_INTERNAL_VALIDATE( len == 0 || buf != NULL );
90
91 if( len > 0 )
92 memset_func( buf, 0, len );
Andres Amaya Garcia614d9c02017-10-24 21:27:43 +010093}
Andres Amaya Garcia904e1ef2018-04-17 09:16:30 -050094#endif /* MBEDTLS_PLATFORM_ZEROIZE_ALT */
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +010095
Manuel Pégourié-Gonnard51f65e42019-10-02 16:01:14 +020096void *mbedtls_platform_memset( void *ptr, int value, size_t num )
Jarno Lamsa07363252019-09-27 16:20:11 +030097{
98 /* Randomize start offset. */
Jarno Lamsa0ff71092019-10-02 08:18:29 +030099 size_t start_offset = (size_t) mbedtls_platform_random_in_range( num );
Jarno Lamsa07363252019-09-27 16:20:11 +0300100 /* Randomize data */
Jarno Lamsaa1e50542019-10-02 12:44:36 +0300101 uint32_t data = mbedtls_platform_random_in_range( 256 );
Jarno Lamsa07363252019-09-27 16:20:11 +0300102
103 /* Perform a pair of memset operations from random locations with
104 * random data */
Jarno Lamsa32db9382019-10-02 08:25:57 +0300105 memset( (void *) ( (unsigned char *) ptr + start_offset ), data,
Jarno Lamsa0ff71092019-10-02 08:18:29 +0300106 ( num - start_offset ) );
107 memset( (void *) ptr, data, start_offset );
Jarno Lamsa07363252019-09-27 16:20:11 +0300108
109 /* Perform the original memset */
Manuel Pégourié-Gonnard51f65e42019-10-02 16:01:14 +0200110 return( memset( ptr, value, num ) );
Jarno Lamsa07363252019-09-27 16:20:11 +0300111}
112
Manuel Pégourié-Gonnard51f65e42019-10-02 16:01:14 +0200113void *mbedtls_platform_memcpy( void *dst, const void *src, size_t num )
Jarno Lamsa07363252019-09-27 16:20:11 +0300114{
115 /* Randomize start offset. */
Jarno Lamsa0ff71092019-10-02 08:18:29 +0300116 size_t start_offset = (size_t) mbedtls_platform_random_in_range( num );
Jarno Lamsa07363252019-09-27 16:20:11 +0300117 /* Randomize initial data to prevent leakage while copying */
Jarno Lamsaa1e50542019-10-02 12:44:36 +0300118 uint32_t data = mbedtls_platform_random_in_range( 256 );
Jarno Lamsa07363252019-09-27 16:20:11 +0300119
Piotr Nowickif0ab6d62020-05-25 12:48:30 +0200120 /* Use memset with random value at first to increase security - memset is
121 not normally part of the memcpy function and here can be useed
122 with regular, unsecured implementation */
Jarno Lamsa0ff71092019-10-02 08:18:29 +0300123 memset( (void *) dst, data, num );
124 memcpy( (void *) ( (unsigned char *) dst + start_offset ),
125 (void *) ( (unsigned char *) src + start_offset ),
126 ( num - start_offset ) );
Manuel Pégourié-Gonnard51f65e42019-10-02 16:01:14 +0200127 return( memcpy( (void *) dst, (void *) src, start_offset ) );
Jarno Lamsa07363252019-09-27 16:20:11 +0300128}
129
Piotr Nowicki5d5841f2020-06-05 16:33:24 +0200130int mbedtls_platform_memmove( void *dst, const void *src, size_t num )
131{
132 /* The buffers can have a common part, so we cannot do a copy from a random
133 * location. By using a temporary buffer we can do so, but the cost of it
134 * is using more memory and longer transfer time. */
135 void *tmp = mbedtls_calloc( 1, num );
136 if( tmp != NULL )
137 {
138 mbedtls_platform_memcpy( tmp, src, num );
139 mbedtls_platform_memcpy( dst, tmp, num );
140 mbedtls_free( tmp );
141 return 0;
142 }
143
Piotr Nowickice0aab42020-06-08 14:08:49 +0200144 return MBEDTLS_ERR_PLATFORM_ALLOC_FAILED;
Piotr Nowicki5d5841f2020-06-05 16:33:24 +0200145}
146
Jarno Lamsa07363252019-09-27 16:20:11 +0300147int mbedtls_platform_memcmp( const void *buf1, const void *buf2, size_t num )
148{
Jarno Lamsa7cb90272019-10-02 08:32:51 +0300149 volatile const unsigned char *A = (volatile const unsigned char *) buf1;
150 volatile const unsigned char *B = (volatile const unsigned char *) buf2;
151 volatile unsigned char diff = 0;
Jarno Lamsa07363252019-09-27 16:20:11 +0300152
Piotr Nowickif0ab6d62020-05-25 12:48:30 +0200153 /* Start from a random location and check the correct number of iterations */
154 size_t i, flow_counter = 0;
Jarno Lamsa0ff71092019-10-02 08:18:29 +0300155 size_t start_offset = (size_t) mbedtls_platform_random_in_range( num );
Jarno Lamsa07363252019-09-27 16:20:11 +0300156
Jarno Lamsa0ff71092019-10-02 08:18:29 +0300157 for( i = start_offset; i < num; i++ )
Jarno Lamsa07363252019-09-27 16:20:11 +0300158 {
Jarno Lamsa7cb90272019-10-02 08:32:51 +0300159 unsigned char x = A[i], y = B[i];
Piotr Nowicki4aaa34c2020-05-20 13:57:38 +0200160 flow_counter++;
Jarno Lamsa7cb90272019-10-02 08:32:51 +0300161 diff |= x ^ y;
Jarno Lamsa07363252019-09-27 16:20:11 +0300162 }
163
Jarno Lamsa0ff71092019-10-02 08:18:29 +0300164 for( i = 0; i < start_offset; i++ )
Jarno Lamsa07363252019-09-27 16:20:11 +0300165 {
Jarno Lamsa7cb90272019-10-02 08:32:51 +0300166 unsigned char x = A[i], y = B[i];
Piotr Nowicki4aaa34c2020-05-20 13:57:38 +0200167 flow_counter++;
Jarno Lamsa7cb90272019-10-02 08:32:51 +0300168 diff |= x ^ y;
Jarno Lamsa07363252019-09-27 16:20:11 +0300169 }
170
Piotr Nowicki4aaa34c2020-05-20 13:57:38 +0200171 /* Return 0 only when diff is 0 and flow_counter is equal to num */
172 return( (int) diff | (int) ( flow_counter ^ num ) );
Jarno Lamsa07363252019-09-27 16:20:11 +0300173}
174
Jarno Lamsaf65e9de2019-10-01 16:09:35 +0300175uint32_t mbedtls_platform_random_in_range( size_t num )
Jarno Lamsa07363252019-09-27 16:20:11 +0300176{
Arto Kinnunende657fc2019-12-04 16:30:54 +0200177#if !defined(MBEDTLS_ENTROPY_HARDWARE_ALT)
Jarno Lamsa07363252019-09-27 16:20:11 +0300178 (void) num;
179 return 0;
Jarno Lamsae29e8a42019-10-03 11:06:35 +0300180#else
181 uint32_t result = 0;
182 size_t olen = 0;
183
184 mbedtls_hardware_poll( NULL, (unsigned char *) &result, sizeof( result ),
185 &olen );
Jarno Lamsa436d18d2019-10-03 11:46:30 +0300186
187 if( num == 0 )
188 {
189 result = 0;
190 }
191 else
192 {
193 result %= num;
194 }
195
196 return( result );
Jarno Lamsae29e8a42019-10-03 11:06:35 +0300197#endif
Jarno Lamsa07363252019-09-27 16:20:11 +0300198}
199
Arto Kinnunenac6d2262020-01-09 10:11:20 +0200200void mbedtls_platform_random_delay( void )
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200201{
202#if !defined(MBEDTLS_ENTROPY_HARDWARE_ALT)
Arto Kinnunenac6d2262020-01-09 10:11:20 +0200203 return;
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200204#else
Arto Kinnunendbf2b432019-12-30 12:55:30 +0200205 size_t rn_1, rn_2, rn_3;
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200206 volatile size_t i = 0;
Arto Kinnunendbf2b432019-12-30 12:55:30 +0200207 uint8_t shift;
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200208
Arto Kinnunenb1486512020-01-09 11:11:23 +0200209 rn_1 = mbedtls_platform_random_in_range( MAX_RAND_DELAY );
Arto Kinnunendbf2b432019-12-30 12:55:30 +0200210 rn_2 = mbedtls_platform_random_in_range( 0xffffffff ) + 1;
211 rn_3 = mbedtls_platform_random_in_range( 0xffffffff ) + 1;
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200212
Arto Kinnunenb47b1052019-12-05 17:32:05 +0200213 do
214 {
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200215 i++;
Arto Kinnunendbf2b432019-12-30 12:55:30 +0200216 shift = rn_2 & 0x07;
217 if ( i % 2 )
218 rn_2 = (uint32_t)( rn_2 >> shift | rn_2 << ( 32 - shift ) );
219 else
220 rn_3 = (uint32_t)( rn_3 << shift | rn_3 >> ( 32 - shift ) );
221 rn_2 ^= rn_3;
222 } while( i < rn_1 || rn_2 == 0 || rn_3 == 0 );
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200223
Arto Kinnunenac6d2262020-01-09 10:11:20 +0200224 return;
Arto Kinnunen4c63b982019-12-02 15:01:41 +0200225#endif /* !MBEDTLS_ENTROPY_HARDWARE_ALT */
226}
227
Hanno Becker6a739782018-09-05 15:06:19 +0100228#if defined(MBEDTLS_HAVE_TIME_DATE) && !defined(MBEDTLS_PLATFORM_GMTIME_R_ALT)
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100229#include <time.h>
Hanno Beckercfeb70c2018-09-05 13:50:22 +0100230#if !defined(_WIN32) && (defined(unix) || \
Andres Amaya Garcia433f9112018-09-05 12:01:57 +0100231 defined(__unix) || defined(__unix__) || (defined(__APPLE__) && \
232 defined(__MACH__)))
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100233#include <unistd.h>
Hanno Becker323d8012018-09-06 11:30:57 +0100234#endif /* !_WIN32 && (unix || __unix || __unix__ ||
235 * (__APPLE__ && __MACH__)) */
Hanno Becker6f705812018-09-06 09:06:33 +0100236
237#if !( ( defined(_POSIX_VERSION) && _POSIX_VERSION >= 200809L ) || \
238 ( defined(_POSIX_THREAD_SAFE_FUNCTIONS ) && \
239 _POSIX_THREAD_SAFE_FUNCTIONS >= 20112L ) )
Andres Amaya Garciaca04a012018-09-05 11:43:57 +0100240/*
241 * This is a convenience shorthand macro to avoid checking the long
242 * preprocessor conditions above. Ideally, we could expose this macro in
Hanno Becker7dd82b42018-09-05 16:25:50 +0100243 * platform_util.h and simply use it in platform_util.c, threading.c and
Andres Amaya Garciaca04a012018-09-05 11:43:57 +0100244 * threading.h. However, this macro is not part of the Mbed TLS public API, so
Andres Amaya Garcia3c9733a2018-09-05 11:52:07 +0100245 * we keep it private by only defining it in this file
Andres Amaya Garciaca04a012018-09-05 11:43:57 +0100246 */
Hanno Beckerf5106d52018-09-06 12:09:56 +0100247#if ! ( defined(_WIN32) && !defined(EFIX64) && !defined(EFI32) )
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100248#define PLATFORM_UTIL_USE_GMTIME
Hanno Beckerf5106d52018-09-06 12:09:56 +0100249#endif /* ! ( defined(_WIN32) && !defined(EFIX64) && !defined(EFI32) ) */
250
Hanno Becker6f705812018-09-06 09:06:33 +0100251#endif /* !( ( defined(_POSIX_VERSION) && _POSIX_VERSION >= 200809L ) || \
252 ( defined(_POSIX_THREAD_SAFE_FUNCTIONS ) && \
253 _POSIX_THREAD_SAFE_FUNCTIONS >= 20112L ) ) */
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100254
Hanno Becker6a739782018-09-05 15:06:19 +0100255struct tm *mbedtls_platform_gmtime_r( const mbedtls_time_t *tt,
256 struct tm *tm_buf )
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100257{
258#if defined(_WIN32) && !defined(EFIX64) && !defined(EFI32)
Andres Amaya Garciaa658d7d2018-08-21 19:33:02 +0100259 return( ( gmtime_s( tm_buf, tt ) == 0 ) ? tm_buf : NULL );
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100260#elif !defined(PLATFORM_UTIL_USE_GMTIME)
Andres Amaya Garciaa658d7d2018-08-21 19:33:02 +0100261 return( gmtime_r( tt, tm_buf ) );
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100262#else
263 struct tm *lt;
264
265#if defined(MBEDTLS_THREADING_C)
266 if( mbedtls_mutex_lock( &mbedtls_threading_gmtime_mutex ) != 0 )
267 return( NULL );
268#endif /* MBEDTLS_THREADING_C */
269
270 lt = gmtime( tt );
271
272 if( lt != NULL )
273 {
274 memcpy( tm_buf, lt, sizeof( struct tm ) );
275 }
276
277#if defined(MBEDTLS_THREADING_C)
278 if( mbedtls_mutex_unlock( &mbedtls_threading_gmtime_mutex ) != 0 )
279 return( NULL );
280#endif /* MBEDTLS_THREADING_C */
281
Andres Amaya Garciaa658d7d2018-08-21 19:33:02 +0100282 return( ( lt == NULL ) ? NULL : tm_buf );
283#endif /* _WIN32 && !EFIX64 && !EFI32 */
Andres Amaya Garcia1abb3682018-08-16 21:42:09 +0100284}
Hanno Becker6a739782018-09-05 15:06:19 +0100285#endif /* MBEDTLS_HAVE_TIME_DATE && MBEDTLS_PLATFORM_GMTIME_R_ALT */
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300286
Arto Kinnunenee9bfca2019-09-06 16:59:00 +0300287unsigned char* mbedtls_platform_put_uint32_be( unsigned char *buf,
Arto Kinnunen4f4849a2019-09-09 10:21:18 +0300288 size_t num )
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300289{
290 *buf++ = (unsigned char) ( num >> 24 );
291 *buf++ = (unsigned char) ( num >> 16 );
292 *buf++ = (unsigned char) ( num >> 8 );
293 *buf++ = (unsigned char) ( num );
294
295 return buf;
296}
297
Arto Kinnunenee9bfca2019-09-06 16:59:00 +0300298unsigned char* mbedtls_platform_put_uint24_be( unsigned char *buf,
Arto Kinnunen4f4849a2019-09-09 10:21:18 +0300299 size_t num )
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300300{
301 *buf++ = (unsigned char) ( num >> 16 );
302 *buf++ = (unsigned char) ( num >> 8 );
303 *buf++ = (unsigned char) ( num );
304
305 return buf;
306}
307
Arto Kinnunenee9bfca2019-09-06 16:59:00 +0300308unsigned char* mbedtls_platform_put_uint16_be( unsigned char *buf,
Arto Kinnunen4f4849a2019-09-09 10:21:18 +0300309 size_t num )
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300310{
311 *buf++ = (unsigned char) ( num >> 8 );
312 *buf++ = (unsigned char) ( num );
313
314 return buf;
315}
316
Arto Kinnunen4f4849a2019-09-09 10:21:18 +0300317size_t mbedtls_platform_get_uint32_be( const unsigned char *buf )
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300318{
319 return ( ( (unsigned int) buf[0] << 24 ) |
320 ( (unsigned int) buf[1] << 16 ) |
321 ( (unsigned int) buf[2] << 8 ) |
322 ( (unsigned int) buf[3] ) );
323}
324
Arto Kinnunen4f4849a2019-09-09 10:21:18 +0300325size_t mbedtls_platform_get_uint24_be( const unsigned char *buf )
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300326{
327 return ( ( buf[0] << 16 ) |
328 ( buf[1] << 8) |
329 ( buf[2] ) );
330}
331
Arto Kinnunen4f4849a2019-09-09 10:21:18 +0300332size_t mbedtls_platform_get_uint16_be( const unsigned char *buf )
Arto Kinnunen0b62ce82019-09-04 14:04:57 +0300333{
334 return ( ( buf[0] << 8 ) |
335 ( buf[1] ) );
336}